Lithium metal batteries are gaining increasing attention due to their potential for significantly higher theoretical energy density than conventional lithium ion batteries. Here, we present a novel mechanochemical modification method for lithium metal anodes, involving roll-pressing the lithium metal foil in contact with ionic liquid-based solutions, enabling the formation of an artificial solid electrolyte interphase with favorable properties such as an improved lithium ion transport and, most importantly, the suppression of dendrite growth, allowing homogeneous electrodeposition/-dissolution using conventional and highly conductive room temperature alkyl carbonate-based electrolytes. As a result, stable cycling in symmetrical Li∥Li cells ...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
An ionic liquid ether double-solvent electrolyte, comprising 1 M Li[(CF3SO2)(n-C4F9SO2)N] dissolv...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Suppressing dendrite formation at lithium metal anodes during cycling is critical for the implementa...
Suppressing dendrite formation at lithium metal anodes during cycling is critical for the implementa...
Suppressing dendrite formation at lithium metal anodes during cycling is critical for the implementa...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
An ionic liquid ether double-solvent electrolyte, comprising 1 M Li[(CF3SO2)(n-C4F9SO2)N] dissolv...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Lithium metal batteries are gaining increasing attention due to their potential for significantly hi...
Suppressing dendrite formation at lithium metal anodes during cycling is critical for the implementa...
Suppressing dendrite formation at lithium metal anodes during cycling is critical for the implementa...
Suppressing dendrite formation at lithium metal anodes during cycling is critical for the implementa...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
Despite the continuous increase in capacity, lithium-ion intercalation batteries are approaching the...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
Lithium metal anodes are considered as the "Holy Grail" to achieve high energy density of rechargeab...
An ionic liquid ether double-solvent electrolyte, comprising 1 M Li[(CF3SO2)(n-C4F9SO2)N] dissolv...